US9702277B2ActiveUtilityA1
Highly thermally conductive valve seat ring
Assignee: BLEISTAHL-PRODUKTIONS GMBH & CO KGPriority: Jul 4, 2012Filed: Jul 3, 2013Granted: Jul 11, 2017
Est. expiryJul 4, 2032(~5.9 yrs left)· nominal 20-yr term from priority
B22F 1/00F01L 3/02C22C 38/04B22F 7/008C22C 38/42B22F 3/16B22F 1/0003B22F 7/02F05C 2201/046F05C 2251/04C22C 38/60C22C 38/52C22C 38/44C22C 38/46F01L 3/08C22C 38/16B22F 5/006
64
PatentIndex Score
1
Cited by
13
References
10
Claims
Abstract
The invention relates to a powdermetallurgically produced valve seat ring having a carrier layer and a function layer. It is the objective of the invention to provide a valve seat ring of the kind mentioned above that offers significantly higher thermal conductivity properties. To achieve this objective and based on a valve seat ring of the kind first mentioned above the invention proposes that the carrier material of the carrier layer has a thermal conductivity higher than 55 W/m*K at a total copper content ranging between >25 and 40% w/w.
Claims
exact text as granted — not AI-modifiedThe invention claimed is:
1. Powdermetallurgically produced valve seat ring comprising a carrier layer ( 2 ) and a function layer ( 3 ), wherein the carrier material of the carrier layer ( 2 ) has a total cooper content ranging between >25 to 40% w/w to provide a thermal conductivity in excess of 55 W/m*K characterized in that the carrier material contains an iron-copper alloy, the copper content of the iron-copper-alloy exceeding 5% w/w.
2. Powdermetallurgically produced valve seat ring according to claim 1 , characterized in that the carrier material of the carrier layer ( 2 ) has a thermal conductivity in excess of 65 W/m*K.
3. Powdermetallurgically produced valve seat ring according to claim 2 , characterized in that the copper contents of the iron-copper alloy 10% w/w.
4. Powdermetallurgically produced valve seat ring according to any one of claim 2 or 3 , characterized in that the carrier material contains a mixture of the iron-copper alloy and copper powder.
5. Powdermetallurgically produced valve seat ring according to claim 4 , characterized in that the share of the copper powder ranges between 5 and 15% w/w.
6. Powdermetallurgically produced valve seat ring according to claim 1 , characterized in that the carrier material and/or the function material contains copper added by means of infiltration.
7. Powdermetallurgically produced valve seat ring according to claim 6 , characterized by a total copper content higher than 25% w/w.
8. Powdermetallurgically produced valve seat ring according to claim 1 , provided with a carrier material forming the carrier layer ( 2 ) of
0.5 to 1.5
% w/w
C
0.1 to 0.5
% w/w
Mn
0.1 to 0.5
% w/w
S
>25 to 40
% w/w
Cu
Balance
Fe.
9. Powdermetallurgically produced valve seat ring according to claim 1 , provided with a function material forming the function layer ( 3 ) of
0.5 to 1.2
% w/w
C
6.0 to 12.0
% w/w
Co
1.0 to 3.5
% w/w
Mo
0.5 to 3.0
% w/w
Ni
1.5 to 5.0
% w/w
Cr
0.1 to 1.0
% w/w
Mn
0.1 to 1.0
% w/w
S
8.0 to 22.0
% w/w
Cu
Balance
% w/w
Fe.
10. Powdermetallurgically produced valve seat ring according to claim 1 , provided with a function material forming the function layer ( 3 ) of
0.5 to 1.5
% w/w
C
5.0 to 12.0
% w/w
Mo
1.5 to 4.5
% w/w
W
0.2 to 2.0
% w/w
V
2.2 to 2.8
% w/w
Cr
0.1 to 1.0
% w/w
Mn
0.1 to 0.5
% w/w
S
12.0 to 24.0
% w/w
Cu
Balance
% w/w
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